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NUMERICAL INVESTIGATIONS OF COOLING ENHANCEMENT WITH INTERNAL RIBS AND EXTERNAL COOLANT FILM

机译:带有内部肋和外部冷却膜的冷却强化的数值研究

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Experimental and numerical investigations were carried out to study the average cooling performance of two different rectangular structures: 1) purely ribbed channel (only ribs were periodically embedded inner the wall of the structure); 2) combined structure of film cooling with the ribs (in the ribbed wall, film holes were periodically drilled). To create a similar environment of gas turbine blade, the experiments were performed at a high temperature mainstream, and the ambient temperature cooling air passed through the channel with the direction normal to the mainstream. In the experimental and numerical investigations, the overall cooling effect contributed by the heat conduction through channel's wall and convections including internal ribbed wall and external film cooling was considered. In the numerical investigation, 3D conservation equations including mass, momentum, energy, turbulence eddy frequency and turbulence kinetic energy equations were solved with ANSYS-CFX, and the hybrid mesh technique and shear stress transport (SST) k-ω model were adopted. This numerical approach was validated by the experimental data. Using the validated numerical approach, the influence factors on the overall cooling effectiveness are discussed, and the effects of the internal ribs and external film cooling are numerically compared by the two structures. The relationship of the overall cooling effectiveness averaged over the rectangular surface with the mainstream Reynolds number, mass flow ratio and temperature ratio of the mainstream to cooling air, as well as the blowing ratio injected through the film holes was fitted by the numerical results.
机译:进行了实验和数值研究,以研究两种不同矩形结构的平均冷却性能:1)纯肋形通道(仅肋骨周期性地嵌入结构壁内); 2)带肋的薄膜冷却组合结构(在带肋的壁上,定期打孔)。为了创建类似燃气轮机叶片的环境,实验在高温主流下进行,环境温度的冷却空气以垂直于主流的方向通过通道。在实验和数值研究中,考虑了通过通道壁和对流(包括内肋壁和外膜冷却)的热传导对整体冷却效果的影响。在数值研究中,利用ANSYS-CFX求解了包括质量,动量,能量,湍流涡流频率和湍流动能方程在内的3D守恒方程,并采用了混合网格技术和剪切应力传递(SST)k-ω模型。实验数据验证了该数值方法的有效性。使用经过验证的数值方法,讨论了影响整体冷却效果的因素,并通过两种结构在数值上比较了内部肋骨和外部薄膜冷却的影响。数值结果拟合了在矩形表面上平均的总体冷却效率与主流雷诺数,主流与冷却空气的质量流量比和温度比以及通过薄膜孔注入的吹风比之间的关系。

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